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首页> 外文期刊>Nucleic Acids Research >Specific recognition and stabilization of monomeric and multimeric G-quadruplexes by cationic porphyrin TMPipEOPP under molecular crowding conditions
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Specific recognition and stabilization of monomeric and multimeric G-quadruplexes by cationic porphyrin TMPipEOPP under molecular crowding conditions

机译:分子拥挤条件下阳离子卟啉TMPipEOPP特异性识别和稳定单体和多聚体G-四链体

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摘要

Ligands targeting telomeric G-quadruplexs are considered good candidates for anticancer drugs. However, current studies on G-quadruplex ligands focus exclusively on the interactions of ligands and monomeric G-quadruplexes under dilute conditions. Living cells are crowded with biomacromolecules, and the ~200-nucleotide G-rich single-stranded overhang of human telomeric DNA has the potential to fold into multimeric G-quadruplex structures containing several G-quadruplex units. Studies on interactions between ligands and multimeric G-quadruplexes under molecular crowding conditions could provide a new route for screening specific telomeric G-quadruplex-targeting ligands. Herein, TMPipEOPP, a cationic porphyrin derivative designed by us, was demonstrated as a promising multimeric telomeric G-quadruplex ligand under molecular crowding conditions. It could highly specifically recognize G-quadruplexes. It could also promote the formation of G-quadruplexes and stabilize them. Detailed studies showed that TMPipEOPP interacted with monomeric G-quadruplexes in sandwich-like end-stacking mode of quadruplex/TMPipEOPP/quadruplex and interacted with multimeric human telomeric G-quadruplexes by intercalating into the pocket between two adjacent G-quadruplex units. The pocket size greatly affected TMPipEOPP binding. A larger pocket was advantageous for the intercalation of TMPipEOPP. This work provides new insights into the ligand-binding properties of multimeric G-quadruplexes under molecular crowding conditionsand introduces a new route for screening anticancer drugs targeting telomeric G-quadruplexes.
机译:靶向端粒G-四链体的配体被认为是抗癌药物的良好候选者。然而,当前对G-四链体配体的研究仅集中在稀条件下配体与单体G-四链体的相互作用。活细胞中挤满了生物大分子,人类端粒DNA的〜200个核苷酸的富含G的单链突出端具有折叠成包含多个G-四链体单元的多聚G-四链体结构的潜力。分子拥挤条件下配体与多聚体G-四链体之间相互作用的研究可以为筛选特定端粒G-四链体靶向配体提供一条新途径。在本文中,由我们设计的阳离子卟啉衍生物TMPipEOPP被证明是在分子拥挤条件下有希望的多聚端粒G-四链体配体。它可以高度特异性地识别G-四链体。它还可以促进G-四链体的形成并使它们稳定。详细研究表明,TMPipEOPP以四联体/ TMPipEOPP /四联体的三明治状末端堆叠模式与单体G-四联体相互作用,并通过插入两个相邻的G-四联体单元之间的口袋中与多聚人端粒G-四联体相互作用。口袋的大小极大地影响了TMPipEOPP的结合。较大的口袋有利于插入TMPipEOPP。这项工作提供了分子拥挤条件下多聚体G-四链体的配体结合特性的新见解,并为筛选针对端粒G-四链体的抗癌药物提供了新途径。

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